Cytotoxicity Activity of Some meso‐Dihydroguaiaretic Acid Derivatives and Mode of Action of the Most Active Compound.

Author:

Domínguez‐Chavarría José Antonio1,García Abraham1ORCID,Romo‐Mancillas Antonio2ORCID,Reyes‐Melo Karen Y.1,Chávez‐Villareal Karen G.1,Vázquez‐Ramírez Ana L.1,Ávalos‐Alanís Francisco G.1ORCID,Cabral‐Romero Claudio3ORCID,Hernández‐Delgadillo Rene3,García‐Cuellar Claudia María4,del Rayo Camacho‐Corona María1ORCID

Affiliation:

1. Universidad Autónoma de Nuevo León, Facultad de Ciencias Químicas, Ciudad Universitaria San Nicolás de los Garza CP 66455 Nuevo León México

2. Universidad Autónoma de Querétaro Facultad de Química, Centro Universitario Cerro de las Campanas S/N CP 76010 Querétaro Qro. México

3. Universidad Autónoma de Nuevo León Facultad de Odontología Laboratorio de Biología Molecular Dr. Aguirre Pequeño y Silao S/N; Col. Mitras Centro, C.P. 64460 Monterrey Nuevo León México

4. Instituto Nacional de Cancerología Subdirección de Investigación Básica Av. San Fernando 22, Belisario Domínguez Secc. 16, Tlalpan C.P. 14080 Ciudad de México, CDMX México

Abstract

AbstractThe aim of this study was to screen sixteen meso1 semi‐synthetic derivatives bearing ether, esther, carbamate, phosphate or aminoether functional groups against five cancer cell lines: MCF‐7 (breast), A549 (lung), HepG2 (liver), HeLa (cervix), and DU145 (prostate) at 25 μM using the MTT assay. Results from the screening showed that two derivatives had the lowest percentage of cell viability at 25 μM, the aminoether derivative meso11 and the esther derivative meso20 against A549 (44.15±0.78 %) and MCF‐7 (41.60±0.92 %), respectively. Then, it was determined the IC50 value of each compound against their most sensitive cancer cell line. Results showed that aminoether derivative meso11 showed potent cytotoxicity against A549 (IC50=17.11±2.11 μM), whereas it resulted more cytotoxic against the LL‐47 lung normal cell line (IC50=9.49±1.19 μM) having a Selective Index (SI) of 0.55. On the other hand, the esther derivative meso20 exhibited potent activity against MCF‐7 (IC50=18.20±1.98 μM), whereas it displayed moderate cytotoxicity against the MCF‐10 breast normal cell line (IC50=41.22±2.17 μM) with a SI of 2.2. Finally, studies on the mechanism of action of meso20 indicated disruption of MCF‐7 plasma membrane in vitro and the AMPK activation in silico.

Publisher

Wiley

Subject

Molecular Biology,Molecular Medicine,General Chemistry,Biochemistry,General Medicine,Bioengineering

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